Regional impacts poorly constrained by climate sensitivity

Fuente: arXiv
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Main Authors: Swaminathan, Ranjini, Schewe, Jacob, Walton, Jeremy, Zimmermann, Klaus, Jones, Colin, Betts, Richard A., Burton, Chantelle, Jones, Chris D., Mengel, Matthias, Reyer, Christopher P. O., Turner, Andrew G., Weigel, Katja
Format: Preprint
Published: 2024
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author Swaminathan, Ranjini
Schewe, Jacob
Walton, Jeremy
Zimmermann, Klaus
Jones, Colin
Betts, Richard A.
Burton, Chantelle
Jones, Chris D.
Mengel, Matthias
Reyer, Christopher P. O.
Turner, Andrew G.
Weigel, Katja
author_facet Swaminathan, Ranjini
Schewe, Jacob
Walton, Jeremy
Zimmermann, Klaus
Jones, Colin
Betts, Richard A.
Burton, Chantelle
Jones, Chris D.
Mengel, Matthias
Reyer, Christopher P. O.
Turner, Andrew G.
Weigel, Katja
contents Climate risk assessments must account for a wide range of possible futures, so scientists often use simulations made by numerous global climate models to explore potential changes in regional climates and their impacts. Some of the latest-generation models have high effective climate sensitivities or EffCS. It has been argued these so-called hot models are unrealistic and should therefore be excluded from analyses of climate change impacts. Whether this would improve regional impact assessments, or make them worse, is unclear. Here we show there is no universal relationship between EffCS and projected changes in a number of important climatic drivers of regional impacts. Analysing heavy rainfall events, meteorological drought, and fire weather in different regions, we find little or no significant correlation with EffCS for most regions and climatic drivers. Even when a correlation is found, internal variability and processes unrelated to EffCS have similar effects on projected changes in the climatic drivers as EffCS. Model selection based solely on EffCS appears to be unjustified and may neglect realistic impacts, leading to an underestimation of climate risks.
format Preprint
id arxiv_https___arxiv_org_abs_2404_11939
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Regional impacts poorly constrained by climate sensitivity
Swaminathan, Ranjini
Schewe, Jacob
Walton, Jeremy
Zimmermann, Klaus
Jones, Colin
Betts, Richard A.
Burton, Chantelle
Jones, Chris D.
Mengel, Matthias
Reyer, Christopher P. O.
Turner, Andrew G.
Weigel, Katja
Atmospheric and Oceanic Physics
Climate risk assessments must account for a wide range of possible futures, so scientists often use simulations made by numerous global climate models to explore potential changes in regional climates and their impacts. Some of the latest-generation models have high effective climate sensitivities or EffCS. It has been argued these so-called hot models are unrealistic and should therefore be excluded from analyses of climate change impacts. Whether this would improve regional impact assessments, or make them worse, is unclear. Here we show there is no universal relationship between EffCS and projected changes in a number of important climatic drivers of regional impacts. Analysing heavy rainfall events, meteorological drought, and fire weather in different regions, we find little or no significant correlation with EffCS for most regions and climatic drivers. Even when a correlation is found, internal variability and processes unrelated to EffCS have similar effects on projected changes in the climatic drivers as EffCS. Model selection based solely on EffCS appears to be unjustified and may neglect realistic impacts, leading to an underestimation of climate risks.
title Regional impacts poorly constrained by climate sensitivity
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2404.11939